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纳帕海流域典型植被类型的土壤水分状况及其影响因素

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以纳帕海流域荒草地、松树林地、裸地、3 a修复区和1 a修复区5种典型植被类型为研究对象,测定其土壤水分、产流产沙、容重和有机碳含量等,研究不同植被类型土壤含水量差异及其影响因素,对当地脆弱生态水文环境的保护和区域可持续发展的实现具有积极意义.结果表明,不同植被类型土壤含水量φ差异明显,荒草地最高,为50.7%,3a修复区和松树林地分别为34.5%和28.7%,而裸地和1 a修复区仅有20%左右;不同植被类型土壤理化特性无明显规律性;地表径流系数差异明显,荒草地最低,仅1.21%,而松树林地为5.73%;荒草地和松树林地泥沙产量低于裸地和1 a修复区.除容重外,土壤含水量与其他理化性质和产流产沙相关性均不显著.先种草迅速增加地表覆盖度的植被恢复方式可快速改善表层土壤性质,增强土壤保水能力.
Soil Moisture Regime Under Different Types of Vegetation Typical of Napahai Catchment and Its Influencing Factors
Five plots of land under different types of vegetation typical of the Napahai Catchment,i.e.grassland,pine forest,bare land,3-year revegetated land and 1-year revegetated land,were selected,and soil water content,runoff,sediment,bulk density and organic carbon content therein measured for exploration of variation of soil water regime with vegetation and its influencing factors,which is of positive significance to the realization of protection of the local fragile ecological hydro-environment and sustainable development of the regional economy simuhaneously.Results show that soil water content varied sharply with vegetation,and was 50.7%,the highest,in grassland,34.5% in 3-year revegetated land,28.7% in pine forest,and only 20% or so in bare land and 1-year revegetated land.The five plots of land did not differ much in soil physico-chemical properties,but did in surface runoff coefficient with grassland being the lowest,1.21% only,and pine forest being 5.73%.Grassland and pine forest was lower than bare land and 1-year revegetated land in sediment yield.Soil water content was not significantly related with any soil physico-chemical properties and sediment yield,except for bulk density.Planting grasses may rapidly expand vegetation coverage of a land,which is an effective approach to rapid amelioration of the surface soil layer in physico-chemical properties,and strengthening the soil in water holding capacity.

Napahaisoil water contentvegetation restorationrunoff and sediment yieldQinghai-Tibetan Plateau

邓淋、罗专溪、黄兵、颜昌宙、杜佳姚、陈樑

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昆明理工大学环境科学与工程学院,云南昆明650500

中国科学院城市环境研究所城市环境与健康重点实验室,福建厦门361021

纳帕海 土壤水分 植被恢复 产流产沙 青藏高原

国家科技支撑计划国家自然科学基金

2011BAC09B0441261079

2014

生态与农村环境学报
环境保护总局南京环境科学研究所

生态与农村环境学报

CSTPCDCSCDCHSSCD北大核心
影响因子:1.248
ISSN:1673-4831
年,卷(期):2014.30(2)
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